Management platform structure based on beam field construction and use method

By adopting a hollow main console and rotary table design in the beam yard construction management platform, integrating the control panel and using the drive components to achieve rotational alignment, the problems of large size and complex operation in the existing technology are solved, and construction efficiency and operation convenience are improved.

CN120475646APending Publication Date: 2025-08-12WUHAN ENGINEERING CO LTD OF CHINA RAILWAY SEVENTH GROUP
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Patent Information

Application Number
CN202510586877.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2025-08-12

AI Technical Summary

Technical Problem

The existing beam yard construction management platform is large in size and complex in operation, which affects construction efficiency.

Method used

The hollow main console design is adopted, and the control panel is integrated on the rotary table, and the rotary table is driven to rotate through the driving components, so that the required control panel is aligned with the observation hole, simplifying the operation process.

Benefits of technology

It realizes that the main console is more compact in size and is easy to operate, improves construction efficiency and operation convenience, and reduces operating time and cost.

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Abstract

The invention provides a management platform structure based on beam yard construction and a use method, and belongs to the technical field of beam yard management platforms, the management platform structure comprises a hollow main console, an observation hole is formed in the top of the main console, a rotating rod is rotatably arranged in the main console, and the rotating rod is horizontally arranged; the rotating table is a regular polygon, the rotating table is fixedly arranged on the axis of the rotating rod in a sleeving mode, and control panels are arranged on multiple circumferential faces of the rotating table; the driving assembly is used for driving the rotating rod to rotate and driving the rotating table to rotate so that one control panel on the rotating table can directly face the observation hole. The device is more compact in size and convenient for workers to operate.
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Description

Technical Field

[0001] The present invention relates to the technical field of beam yard management platforms, and in particular to a management platform structure for beam yard construction and a method of use. Background Art

[0002] The existing beam yard construction management platform usually consists of a main console that integrates multiple control panels. Each control panel is equipped with different buttons, switches and indicator lights to control various equipment and systems required in the construction process, such as monitoring equipment, scheduling systems, material management, etc.

[0003] While this design meets basic operational requirements, it suffers from some significant shortcomings in practice. First, because multiple control panels are centralized on a single console, the platform becomes larger and occupies a significant amount of operating space. Operators often have to search for the appropriate control panel across the large console area, increasing operational complexity and time costs. Especially under high loads and emergency situations, operators can experience delays due to cumbersome procedures, impacting overall construction efficiency. Summary of the Invention

[0004] The purpose of the present invention is to provide a management platform structure and a use method for beam yard construction, which has a more compact volume and is convenient for workers to operate.

[0005] In a first aspect, the embodiments of the present invention are implemented through the following technical solutions:

[0006] A management platform structure for beam yard construction, comprising:

[0007] The main console is hollow, with an observation hole on the top, and a rotating rod rotatably arranged inside the main console, and the rotating rod is arranged horizontally;

[0008] A rotating table, the rotating table is a regular polygon, the rotating table is fixedly sleeved on the axis of the rotating rod, and control panels are arranged on multiple circumferential surfaces of the rotating table;

[0009] A driving assembly is used to drive the rotating rod to rotate and drive the rotating platform to rotate, so that one of the control panels on the rotating platform is arranged facing the observation hole.

[0010] Furthermore, the drive assembly includes a pair of bevel gears, a connecting rod and a limit member. The pair of bevel gears are meshed with each other, one of the bevel gears is fixedly sleeved on the rotating rod, and the other bevel gear is fixedly connected to one end of the connecting rod. The other end of the connecting rod is rotated to pass through the top of the main console, and the limit member is used to fix the position of the connecting rod after the connecting rod rotates to any angle.

[0011] Furthermore, a pair of bevel gears are of the same size and have the same number of teeth, the limiting member includes a rotating sleeve, an end face gear ring and a spring, the cross-section of the end of the connecting rod passing through the top of the main console is square, the rotating sleeve is slidably mounted on the square part of the top of the main console, the end face gear ring is fixedly arranged on the top of the main console and is coaxially arranged with the connecting rod, the bottom of the rotating sleeve is uniformly provided with a plurality of tooth grooves along the circumferential direction, the tooth grooves and the end face gear ring are engaged with each other, the spring is sleeved on the top position of the connecting rod and is used to drive the tooth grooves to maintain engagement with the end face gear ring.

[0012] Furthermore, a pointer is fixedly provided on the side wall of the rotating sleeve, and a plurality of labels are evenly fixedly provided on the top of the main console with the connecting rod as the center. The number of the plurality of labels is the same as the number of sides of a regular polygon, and the pointer is provided opposite to one of the labels.

[0013] Furthermore, a limiting post is fixedly provided on the top of the main console, and the limiting post is arranged to abut against the side wall of the pointer.

[0014] Furthermore, a rubber sealing ring is fixedly provided at the observation hole of the main console along the circumferential direction, and the rubber sealing ring is used to be attached to the outer side wall of the rotating table;

[0015] And / or, a rotating ring is fixedly provided on the rotating sleeve.

[0016] Furthermore, a sliding groove is vertically provided on one side of the main console, a lighting lamp is slidably arranged in the sliding groove, and a driving member for driving the lighting lamp to rise or fall is provided in the main console.

[0017] Furthermore, a receiving groove is vertically provided on the top of the main console away from the operator, a light shielding plate is slidably provided in the receiving groove, and a driving member for driving the light shielding plate to rise or fall is also provided in the main console.

[0018] Furthermore, the light shield is arranged in a bucket shape, and the top position of the side away from the operator is arranged in an inclined shape.

[0019] In a second aspect, the embodiments of the present invention are implemented through the following technical solutions:

[0020] A method for using a management platform structure for beam yard construction, applicable to the management platform structure for beam yard construction described in the above solution, comprises the following steps:

[0021] S1: Determine the required control panel;

[0022] S2: Use the drive assembly to drive the rotating table to rotate and align the required control panel with the observation hole;

[0023] S3: Directly operate the corresponding control panel.

[0024] The technical solutions of the embodiments of the present invention have at least the following advantages and beneficial effects:

[0025] 1. This invention integrates multiple control panels on a rotating platform. Using a drive assembly to rotate the platform, the desired control panel is aligned with the observation hole, allowing staff to directly operate the corresponding control panel. This design not only makes the main console more compact, but also improves operational convenience, simplifies the workflow, and facilitates precise operation.

[0026] 2. The present invention pulls the rotating sleeve upward, disengaging its teeth from the end face gear ring. This allows the sleeve to rotate freely, thereby driving the rotating rod and turntable. When the sleeve is released, the teeth reengage the end face gear ring, restricting the position of the rotating rod and turntable. This simple structure allows for easy adjustment of the turntable, aligning any control panel with the observation hole, facilitating operator operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.

[0028] Figure 1 This is a schematic diagram of the overall structure of the management platform structure for beam yard construction provided by the present invention;

[0029] Figure 2 The present invention is intended to show the lowered state of the lighting lamp and the light barrier as well as the internal structure diagram of the main console;

[0030] Figure 3 This invention is intended to show the structural diagram of the rotating table and the driving assembly;

[0031] Figure 4 This is a schematic diagram showing the partial structure of the limiting member of the present invention;

[0032] Icons: 1-main console, 11-observation hole, 111-rubber sealing ring, 12-sliding groove, 121-illumination lamp, 13-accommodation groove, 131-light baffle, 14-driving part, 2-rotating rod, 3-rotating table, 31-control panel, 4-driving assembly, 41-bevel gear, 42-connecting rod, 421-end, 43-limiting part, 431-rotating sleeve, 4311-tooth groove, 4312-rotating ring, 432-end face tooth ring, 433-spring, 5-pointer, 6-label, 7-limiting column, 8-wiring harness. DETAILED DESCRIPTION

[0033] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.

[0034] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the invention as claimed, but rather merely represents selected embodiments of the present invention. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort shall fall within the scope of protection of the present invention.

[0035] Example

[0036] The following is further described in conjunction with specific embodiments. Figures 1-4 The figure shows a management platform structure for beam yard construction, including a main console 1. The console 1 is box-shaped and hollow, with an interior space that accommodates various control and electrical components. A square observation hole 11 is provided at the top of the console 1, facilitating operator monitoring and operation, improving work efficiency. The size of the observation hole 11 is designed to optimize the visual field of most operators. A horizontally positioned rotating rod 2 is provided within the console 1 for rotation.

[0037] Among them, the rotating platform 3 is a regular polygon. In this embodiment, the rotating platform 3 is a regular hexagon. The rotating platform 3 is fixedly mounted on the axis of the rotating rod 2 to ensure the stability and precise rotation control of the rotating platform 3. Control panels 31 are arranged on multiple circumferential surfaces of the rotating platform 3. Each control panel 31 is provided with different operating buttons, display screens or indicator lights to facilitate the control and monitoring of various functions of the beam yard construction at different angles. These control panels 31 respectively control various links in the beam yard construction process, such as equipment startup, data monitoring, alarms, adjustments, etc. Each control panel 31 is integrated with a simple and clear operating interface, which is convenient for the operator to quickly understand and use.

[0038] Regarding the connection between the rotating rod 2 and the rotating platform 3: The rotating rod 2 is located on one side of the rotating platform 3 and is rotatably connected to the inner wall of the main console 1 via a bearing seat and bearings. This ensures smooth and precise rotation of the rotating rod 2, preventing friction and wear that could affect rotation accuracy. The bearing seat is designed to withstand high pressure, ensuring it maintains good working condition during long-term use and is easy to maintain and replace. The bearing material selection and structural design take into account the long-term load and high-frequency rotation requirements.

[0039] The other side of the turntable 3 is specifically designed to route wires, cables, and data cables through a wiring harness 8, preventing them from becoming tangled or tangled during the turntable 3's rotation. Wiring harness 8 utilizes a flexible guide channel or conduit to ensure unobstructed flow throughout the turntable 3's rotation. To ensure the safety and durability of the wiring, the inner wall of the wiring harness 8 is constructed from a wear-resistant and high-temperature-resistant material, enhancing cable protection. Furthermore, a buffer or overcurrent protector is installed at the exit of wiring harness 8 to prevent damage to equipment due to wiring harness 8 entanglement or current overload.

[0040] The drive assembly 4 is used to drive the rotating rod 2 to rotate and drive the rotating table 3 to rotate so that one of the control panels 31 on the rotating table 3 is arranged to face the observation hole 11. In different embodiments, the drive assembly 4 can be connected to the rotating rod 2 through a motor and a transmission device (such as a belt, gear or coupling, etc.). When the drive assembly 4 is started, the motor drives the rotating rod 2 to rotate. By precisely controlling the rotation angle, the control panel 31 on the rotating table 3 can be adjusted to the optimal viewing angle to align with the observation hole 11, making it convenient for the operator to operate and monitor relevant data. The drive assembly 4 can achieve fine angle adjustment and has stable output power, ensuring the reliability and response speed of the rotating table 3 during long-term use.

[0041] As for the bottom of the main console 1, an anti-skid pad or base is provided at the bottom of the main console 1, which can effectively fix the platform and prevent vibration or displacement from affecting the operation.

[0042] Reference Figure 2 and Figure 3 As shown, the drive assembly 4 includes a pair of bevel gears 41, a connecting rod 42, and a limiter 43. The pair of bevel gears 41 are meshed with each other to ensure precise transmission between the rotating rod 2 and the rotating table 3. One of the pair of bevel gears 41 is fixedly mounted on the rotating rod 2, and the other bevel gear 41 is fixedly connected to one end of the connecting rod 42. The other end of the connecting rod 42 is rotated to pass through the top of the main console 1. Through this design, the precise fit between the bevel gears 41 and the connecting rod 42 can ensure that the rotating table 3 can achieve smooth and consistent angle adjustment during rotation. The limiter 43 is used to fix the position of the connecting rod 42 after the connecting rod 42 rotates to any angle, so as to prevent the connecting rod 42 from unnecessary deviation or excessive rotation due to external force or inertia during rotation.

[0043] Reference Figure 3 and Figure 4 As shown, the pair of bevel gears 41 are of equal size and have the same number of teeth. This design ensures that each rotation of the connecting rod 42 corresponds to a corresponding rotation of the bevel gears 41. This ensures that each adjustment of the rotating platform 3 is consistent with the rotation angle of the rotating rod 2, avoiding errors or asymmetric rotation. This precise gear transmission design allows the operator to precisely control the angle of the rotating platform 3, ensuring that the control panel 31 is always aligned with the observation hole 11 for operation and monitoring. The limiting member 43 includes a rotating sleeve 431, an end face tooth ring 432 and a spring 433. The cross-section of the end of the connecting rod 42 passing through the top of the main console 1 is square. The rotating sleeve 431 is slidably sleeved on the square part of the top of the main console 1. The end face tooth ring 432 is fixedly set on the top of the main console 1 and is coaxially arranged with the connecting rod 42. The bottom of the rotating sleeve 431 is evenly provided with a plurality of tooth grooves 4311 along the circumferential direction. The tooth grooves 4311 and the end face tooth ring 432 are engaged with each other. The spring 433 is sleeved on the top position of the connecting rod 42 and is used to drive the tooth grooves 4311 to maintain engagement with the end face tooth ring 432. Specifically, one end of the spring 433 is fixedly welded to the rotating sleeve 431, and the other end is welded to the end head 421 at the end of the connecting rod 42.

[0044] Reference Figure 2 and Figure 4As shown, a pointer 5 is fixedly welded to the side wall of the rotating sleeve 431. The pointer 5 is used to indicate the angular position of the control panel 31 on the rotating table 3, helping the staff to accurately determine the position of the operating interface. A plurality of labels 6 are evenly fixed on the top of the main console 1 with the connecting rod 42 as the center. The number of these labels 6 is the same as the number of sides of the regular polygon of the rotating table 3. In this embodiment, the number of labels 6 is 6, which meets the design requirements of a regular hexagon. Each label 6 is clearly marked to indicate the various fixed angles of the rotating table 3. The pointer 5 is set opposite one of the labels 6. When the rotating sleeve 431 rotates, the pointer 5 will move along the indicated direction of the label 6, thereby indicating the current rotation position of the control panel 31.

[0045] Because the pair of bevel gears 41 are of equal size and have the same number of teeth, each time the rotating sleeve 431 rotates, the pointer 5 also rotates, accurately pointing to a label 6. When the pointer 5 on the rotating sleeve 431 rotates to the position corresponding to the label 6, the control panel 31 on the rotating platform 3 rotates accordingly to the corresponding observation hole 11 position, ensuring convenient operation and monitoring for staff. This design ensures precise alignment between the control panel 31 of the rotating platform 3 and the observation hole 11, improving operational efficiency and accuracy.

[0046] To further enhance the system's safety and stability, a limit post 7 is welded to the top of the main console 1. This limit post 7 contacts the sidewall of the pointer 5 of the rotating sleeve 431. The function of the limit post 7 is to limit the rotation range of the rotating sleeve 431. By contacting the pointer 5, the limit post 7 limits the rotation angle of the connecting rod 42, thereby preventing the rotating sleeve 431 from rotating beyond a preset number of revolutions and ensuring that the control panel 31 rotates only within a limited range. Once the limit post 7 blocks the pointer 5, it limits the connecting rod 42 from rotating multiple times, preventing excessive rotation during rotation and further ensuring that the position of the rotating table 3 does not shift or become uncontrolled.

[0047] This design allows the connecting rod 42 to rotate only one full revolution, either forward or reverse. During operation, the limiting post 7 effectively prevents the unrestricted rotation of the connecting rod 42 from causing unnecessary tangling of wires, cables, and data lines, ensuring that the wiring harness 8 remains unobstructed during the rotation of the rotating platform 3. This design significantly enhances the safety and reliability of the system, making the rotating platform 3 both efficient and stable in actual operation, reducing maintenance costs, and extending the service life of the equipment.

[0048] Reference Figure 1 and Figure 2As shown, a rubber sealing ring 111 is fixedly installed circumferentially at the observation hole 11 of the main console 1. This rubber sealing ring 111 is used to ensure a tight seal between the observation hole 11 and the turntable 3, preventing dust, moisture, or other impurities from entering the interior of the main console 1. The rubber sealing ring 111 fits tightly against the outer wall of the turntable 3, forming an effective sealing structure. This prevents contamination of the interior of the main console 1 due to the rotation of the turntable 3 or changes in the external environment, thereby ensuring the normal operation and long-term stability of the equipment. At the same time, the rubber sealing ring 111 can provide a certain buffering effect during the rotation of the turntable 3, reducing wear caused by contact friction and further improving the durability of the system.

[0049] As an optional embodiment, a rotating ring 4312 is fixedly provided on the rotating sleeve 431. The purpose of providing the rotating ring 4312 is to facilitate the staff to make adjustments more conveniently during operation. The shape design of the rotating ring 4312 conforms to ergonomics, making it easy for the operator to easily rotate and adjust the angle of the rotating sleeve 431 with his fingers. The rotating ring 4312 can provide additional torque manually to help the operator quickly and accurately adjust the control panel 31 of the rotating table 3 to align with the observation hole 11, thereby reducing operator fatigue and improving work efficiency. In addition, the surface of the rotating ring 4312 can be designed with an anti-slip texture to ensure that the operator can hold the rotating ring 4312 stably, thereby avoiding the situation where the rotating table 3 is not rotated accurately due to operational errors.

[0050] Reference Figure 1 and Figure 2 As shown, a sliding slot 12 is vertically defined on one side of the main console 1. An illuminating lamp 121 is positioned within the slot 12, allowing for free sliding movement and adjustable angles. The angle of the illuminating lamp 121 can be adjusted as needed to better illuminate the control panel 31, ensuring that operators can clearly see the operating interface on the control panel 31 even in low-light environments. Adjusting the angle of the illuminating lamp 121 allows for more flexible lighting effects, avoiding operational difficulties caused by uneven lighting or an inappropriate lighting angle.

[0051] To provide sufficient adjustment flexibility, the main console 1 is equipped with a drive element 14 for raising and lowering the lighting fixture 121. This drive element 14 can be an electric or pneumatic cylinder, ensuring that the lighting fixture 121 can be freely adjusted in height as needed, always maintaining the optimal operating position. This drive ensures that the lighting fixture 121 can be raised and lowered smoothly and accurately, preventing any jamming and stabilization, thus ensuring the reliability and stability of the lighting system.

[0052] Reference Figure 1 and Figure 2As shown, a receiving groove 13 is vertically provided on the side of the top of the main console 1 away from the operator, and a light shielding plate 131 is also slidably provided in the receiving groove 13. The purpose of providing the light shielding plate 131 is to block or guide the light of the lighting lamp 121 when necessary, to prevent the light from directly shining into the operator's eyes or other areas that do not need to be illuminated. The lifting and lowering of the light shielding plate 131 is also controlled by a special driving member 14. The driving member 14 is similar to the driving member 14 of the lighting lamp 121 and can be driven by an electric cylinder or a pneumatic cylinder, so as to achieve smooth lifting and position adjustment of the light shielding plate 131. Through this design, the lifting and lowering process of the light shielding plate 131 is smoother, and its adjustability in actual use can be ensured.

[0053] Light baffle 131 is shaped like a bucket, effectively blocking excess light and directing it to the desired area. The top of light baffle 131, facing away from the operator, is tilted at a precisely designed angle to effectively block light, reduce unnecessary light scatter, and prevent light from directly hitting the operator's eyes or other areas, thereby improving operator comfort and safety. This design also effectively prevents light reflections and spot interference, enhancing the precision of the overall lighting effect.

[0054] In addition, the embodiments of the present invention are achieved through the following technical solutions:

[0055] A method for using a management platform structure for beam yard construction, applicable to the management platform structure for beam yard construction in the above-mentioned solution, comprises the following steps:

[0056] S1: Determine the required control panel 31;

[0057] S2: Use the driving assembly 4 to drive the rotating table 3 to rotate and align the required control panel 31 with the observation hole 11;

[0058] S3: Directly operate the corresponding control panel 31.

[0059] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A management platform structure for beam yard construction, characterized by: include: A main console (1), wherein the main console (1) is hollow, an observation hole (11) is provided on the top of the main console (1), a rotating rod (2) is rotatably provided in the main console (1), and the rotating rod (2) is horizontally arranged; A rotating platform (3), the rotating platform (3) is a regular polygon, the rotating platform (3) is fixedly sleeved on the axis of the rotating rod (2), and control panels (31) are arranged on multiple circumferential surfaces of the rotating platform (3); A driving assembly (4) is used to drive the rotating rod (2) to rotate and drive the rotating platform (3) to rotate, so that one of the control panels (31) on the rotating platform (3) is arranged facing the observation hole (11).

2. The management platform structure for beam yard construction according to claim 1 is characterized in that: The driving assembly (4) comprises a pair of bevel gears (41), a connecting rod (42) and a limiting member (43). The pair of bevel gears (41) are meshed with each other. One of the pair of bevel gears (41) is fixedly sleeved on the rotating rod (2), and the other bevel gear (41) is fixedly connected to one end of the connecting rod (42). The other end of the connecting rod (42) is rotated to pass through the top of the main console (1). The limiting member (43) is used to fix the position of the connecting rod (42) after the connecting rod (42) rotates to any angle.

3. The management platform structure for beam yard construction according to claim 2 is characterized in that: A pair of bevel gears (41) are of the same size and have the same number of teeth. The limiting member (43) includes a rotating sleeve (431), an end face tooth ring (432) and a spring (433). The cross section of one end of the connecting rod (42) passing through the top of the main console (1) is square. The rotating sleeve (431) is slidably sleeved on the square portion of the top of the main console (1). The end face tooth ring (432) is fixedly arranged on the top of the main console (1) and is coaxially arranged with the connecting rod (42). The bottom of the rotating sleeve (431) is uniformly provided with a plurality of tooth grooves (4311) along the circumferential direction. The tooth grooves (4311) and the end face tooth ring (432) are meshed with each other. The spring (433) is sleeved on the top position of the connecting rod (42) and is used to drive the tooth grooves (4311) to maintain meshing with the end face tooth ring (432).

4. The management platform structure for beam yard construction according to claim 3 is characterized in that: A pointer (5) is fixedly provided on the side wall of the rotating sleeve (431), and a plurality of labels (6) are evenly fixedly provided on the top of the main console (1) with the connecting rod (42) as the center. The number of the plurality of labels (6) is the same as the number of sides of a regular polygon, and the pointer (5) is provided opposite to one of the labels (6).

5. The management platform structure for beam yard construction according to claim 4 is characterized in that: A limiting column (7) is fixedly provided on the top of the main console (1), and the limiting column (7) is arranged in contact with the side wall of the pointer (5).

6. The management platform structure for beam yard construction according to claim 3 is characterized in that: A rubber sealing ring (111) is fixedly provided at the observation hole (11) of the main console (1) along the circumferential direction, and the rubber sealing ring (111) is used to be arranged in contact with the outer wall of the rotating table (3); And / or, a rotating ring (4312) is fixedly provided on the rotating sleeve (431).

7. The management platform structure for beam yard construction according to claim 1 is characterized in that: A sliding groove (12) is vertically provided on one side of the main console (1), a lighting lamp (121) is slidably arranged in the sliding groove (12), and a driving member (14) for driving the lighting lamp (121) to rise or fall is provided in the main console (1).

8. The management platform structure for beam yard construction according to claim 7 is characterized in that: A receiving groove (13) is vertically provided on a side of the top of the main console (1) away from the operator, a light shielding plate (131) is slidably provided in the receiving groove (13), and a driving member (14) for driving the light shielding plate (131) to rise or fall is also provided in the main console (1).

9. The management platform structure for beam yard construction according to claim 8 is characterized in that: The light shielding plate (131) is arranged in a bucket shape, and the top position of the side away from the operator is arranged in an inclined shape.

10. A method for using a management platform structure for beam yard construction, applicable to the management platform structure for beam yard construction according to any one of claims 1 to 9, characterized in that: The steps include: S1: Determine the required control panel (31); S2: Using the driving assembly (4) to drive the rotating platform (3) to rotate, aligning the required control panel (31) with the observation hole (11); S3: Directly operate the corresponding control panel (31).